Literature DB >> 3364464

Computer models for designing hypertension experiments and studying concepts.

A C Guyton1, J P Montani, J E Hall, R D Manning.   

Abstract

This paper demonstrates how computer models along with animal experiments have been used to work out the conceptual bases of hypertensive mechanisms, especially the following: (1) The renal-fluid volume pressure control mechanism has a feed-back gain for pressure control of infinity. Therefore, the chronic level to which the arterial pressure is controlled can be changed only by altering this pressure control mechanism. (2) An increase in total peripheral resistance is not sufficient by itself to cause hypertension. The only resistances in the circulatory system that, when increased, will cause hypertension are those along a restricted axis from the root of the aorta to Bowman's capsule in the kidneys. (3) Autoregulation in the peripheral vascular beds does not increase the arterial pressure in hypertension. However, autoregulation can convert high cardiac output hypertension into high peripheral resistance hypertension. (4) In a computer simulation that cannot yet be performed in animals, a simulated hypertension caused by a combination of increased renal afferent and efferent arteriolar resistances has characteristics that match almost exactly those of essential hypertension.

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Year:  1988        PMID: 3364464     DOI: 10.1097/00000441-198804000-00018

Source DB:  PubMed          Journal:  Am J Med Sci        ISSN: 0002-9629            Impact factor:   2.378


  6 in total

1.  Modeling of autonomic control in sleep-disordered breathing.

Authors:  Michael C K Khoo
Journal:  Cardiovasc Eng       Date:  2008-03

2.  Testing Computer Models Predicting Human Responses to a High-Salt Diet.

Authors:  Theodore W Kurtz; Stephen E DiCarlo; Michal Pravenec; Filip Ježek; Jan Šilar; Jiří Kofránek; R Curtis Morris
Journal:  Hypertension       Date:  2018-12       Impact factor: 10.190

Review 3.  Space physiology IV: mathematical modeling of the cardiovascular system in space exploration.

Authors:  M Keith Sharp; Jerry Joseph Batzel; Jean-Pierre Montani
Journal:  Eur J Appl Physiol       Date:  2013-03-29       Impact factor: 3.078

4.  Current computational models do not reveal the importance of the nervous system in long-term control of arterial pressure.

Authors:  John W Osborn; Viktoria A Averina; Gregory D Fink
Journal:  Exp Physiol       Date:  2009-04       Impact factor: 2.969

5.  Validation of a computational platform for the analysis of the physiologic mechanisms of a human experimental model of hemorrhage.

Authors:  Richard L Summers; Kevin R Ward; Tarynn Witten; Victor A Convertino; Kathy L Ryan; Thomas G Coleman; Robert L Hester
Journal:  Resuscitation       Date:  2009-10-04       Impact factor: 5.262

6.  Theoretical Analysis of the Relative Impact of Obesity on Hemodynamic Stability During Acute Hemorrhagic Shock.

Authors:  Sarah A Sterling; Alan E Jones; Thomas G Coleman; Richard L Summers
Journal:  Arch Trauma Res       Date:  2015-09-23
  6 in total

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